51cg

Professor Abbie McLaughlin

Professor Abbie McLaughlin
Professor Abbie McLaughlin
Professor Abbie McLaughlin

BSc (Durham), PhD (Cambridge)

Personal Chair

Accepting PhDs

51cg
Email Address
a.c.mclaughlin@abdn.ac.uk
Telephone Number
+44 (0)1224 272924
Office Address

Meston Room G23

School/Department
School of Natural and Computing Sciences

Biography

Professor Abbie Mclaughlin is currently a chair in inorganic chemistry at the 51cg. Her expertise lies in the synthesis and study of transition metal oxides with fascinating electrical and magnetic properties. This includes discovery of novel exotic magnetic and electronic materials and novel electrolytes for application in ceramic fuel cells. She is particularly interested in structure-property relationships and determining design rules to improve a specific property.

She has published ~ 80 papers (h-index 23, Google Scholar) on the study of transition metal oxides using structural (powder diffraction) and physical (magnetic and conductivity) measurements. She has secured over £2.5M research funding from sources such as EPSRC, the Leverhulme Trust, the Royal Society of Edinburgh and the Royal Society. She has been awarded > 200 days of neutron diffraction and synchrotron X-ray diffraction beamtime at the large-scale facilities of ISIS and Diamond, Didcot and the ILL and ESRF, Grenoble. 

She is a member of the EPSRC college and serves on the EPSRC Physical Sciences panel. She has previously served on ISIS, ILL and Oakridge facility access panels. 

 

Memberships and Affiliations

Internal Memberships

Professor Mclaughlin is currently Head of the Department of Chemistry.

External Memberships

FRSC

Prizes and Awards

2021                    51cg Excellence Award - Outstanding Research Awards: Individuals Further Stage of Career – STEM.

2020-2021         Leverhulme Trust research fellowship.

2006-2009        Leverhulme Trust early career fellowship.

2003-2006        Royal Society of Edinburgh, SEELLD personal research fellowship.

Research

Research Overview

Solid state materials are of fundamental importance due to the plethora of exciting physical properties that have been detected and applied in technological applications. We are interested in synthesising novel materials that exhibit fascinating electrical (ionic conducting) or magnetic properties.

Rietveld refinement of crystallographic models from X-ray and Neutron powder diffraction data (at facilities such as ISIS, Rutherford Appleton Laboratory, Didcot, UK and the ESRF and ILL, Grenoble, France) are used in order to correlate the structure-property relationships in the novel synthesised compounds which enable us to tune the properties of our materials.

Research Expertise

Solid state synthesis

Rietveld refinement of crystallographic models from X-ray and neutron powder diffraction data

Characterisation of ionic conductors via impedance spectroscopy

Characterisation of superinsulators

Electronic and magnetic characterisation of novel oxides and pnictides

Magnetic structure determination

Research Facilities

A suite of high temperature tube and box furnaces (up to 1600 oC) for solid state synthesis

Two top of the range diffractometers (Panalytical X’Pert Powder and Empyrean powder diffractometers)

Variable temperature impedance jig coupled to a Solartron SI 1260 Impedance/Gain-Phase Analyser

Stanton Redcroft TG/DTA

Departmental access to a Mettler Toledo TGA 2 coupled with a Hiden Quadrupole Mass Spectrometer

Departmental access to a Carl Zeiss Gemini SEM 300 to determine the microstructures of samples in addition to EDX measurements

Research Areas

Accepting PhDs

I am currently accepting PhDs in Chemistry.

Please get in touch if you would like to discuss your research ideas further.

Chemistry

  • Supervising
  • Accepting PhDs

Research Specialisms

  • Inorganic Chemistry
  • Materials Science
  • Condensed Matter Physics
  • Chemistry

Our research specialisms are based on the Higher Education Classification of Subjects (HECoS) which is , published under the licence.

Current Research

Oxide Ion Conductors

 

Solid oxide fuel cells (SOFCs) are electrochemical devices able to generate electricity from renewable energy sources, with high efficiency and low emissions of pollutants. However, oxide ion transport in most commercially available solid electrolytes is enabled only at high working temperatures (> 700 °C), thus making the commercialization of SOFCs particularly challenging. The high operating temperature reduces the components’ durability, results in slow start up times and the necessitation of expensive materials for seals and interconnects. In order to overcome these issues, it is desirable to develop novel electrolyte materials with significant oxide ion conductivity at intermediate temperatures (300 – 600 °C). Ionic conduction in solid oxides is strongly related to the crystal structure, and as a result the discovery and characterization of novel oxide ion conductors in various structural families has attained significant attention from researchers. We have been investigating hexagonal perovskites Ba3M’M’’O8.5 (M’M’’ = VW, NbMo, NbW) which exhibit highly disordered crystal structures and state-of-the art conductivity. We are currently interested in synthesising new materials with different combinations of M’M’’ to see how the chemistry controls the ionic conductivity.

 Mixed Proton/Oxide Ion Conductors

We are also interested in mixed ion conductors, specifically mixed oxide-ion and proton-conductors. Such dual ion conductors have been proposed as a new class of electrolyte for intermediate temperature ceramic fuel cells, as they exhibit low ohmic resistance without external gas humidification. We have been investigating the electrical and structural properties of Ba7Nb4MoO20, a cation-deficient 7H hexagonal perovskite derivative formed by an intergrowth of palmierite layers and 12R perovskite blocks. Ba7Nb4MoO20 supports remarkable oxide ion and proton conductivity with excellent chemical and electrical stability over a range of pO2. The ionic conduction properties of Ba7Nb4MoO20 are linked to its distinct disordered crystal structure. Ba7Nb4MoO20 supports pure ionic conduction with high proton and oxide ion conductivity at 510 °C (the bulk conductivity is 4.0 mS cm-1) and hence is an exceptional candidate for application as a dual-ion solid electrolyte in a ceramic fuel cell which will combine the advantages of both oxide ion and proton conducting electrolytes. We are currently performing chemical doping studies to further enhance the conductivity.

Magnetic Materials

The recent report of high temperature superconductivity in oxypnictides such as LnFeAsO1-xFx with superconducting transition temperatures (Tcs) up to 55 K has led to a rapid expansion in the research of oxypnictide materials. We have recently discovered the counterpart, colossal magnetoresistance (CMR) in Mn2+ based oxypnictides NdMnAsO1-xFx, so that both manifestations of correlated electronic behaviour are now found in these new materials. Colossal magnetoresistant materials exhibit a large change (> 90%) in their electronic resistivity upon application of a magnetic field and have application as magnetoresistive sensors and spintronic devices in which electron spins are used to process information. We are currently investigating more complex cation ordered oxypnictides such as Sr2Mn2CrAs2O2 which exhibit spin reorientation magnetic transitions upon cooling which may show coupling between magnetic and electronic degrees of freedom.

 

 

Funding and Grants

We have had funding from a range of sources including EPSRC, the Leverhulme Trust, Institut Laue Langevin,  the Commonwealth Scholarship Commission, Chief Scientist Office and the Royal Society.

If you’re interested in joining the group as a PhD student, please email a.c.mclaughlin@abdn.ac.uk.


 
Teaching

Teaching Responsibilities

Dr Mclaughlin teaches the following courses:

  • CM1022 Elements of Chemistry
  • CM2519 Solids
  • CM2012 Electrical Materials
  • CM3037 Transition Metal Chemistry
  • CM4026 Lanthanides and actidnides
  • CM5003 Magnets, metals and superconductors 

 

 

Publications

Page 1 of 2 Results 1 to 50 of 86

  • Investigation of V5+ Substitution on the Crystal Structure and Oxide Ion Conductivity of Ba7Nb4MoO20

    Tawse, D. N., Fop, S., Lindsay, T., Ritter, C., Mclaughlin, A. C.
    Journal of Solid State Chemistry, 126315
    Contributions to Journals: Articles
  • Structure Property Relationships of the Exotic Insulator-Insulator Transition in CeMnAsO1-xFx: A Potential Excitonic Insulator

    Simpson, S., Lawrence, G., Ritter, C., Wildman, E., Arevalo-Lopez, A., Morita, K., Gibson, Q., McLaughlin, A.
    Chemistry of Materials, vol. 38, no. 7, pp. 3630-3638
    Contributions to Journals: Articles
  • The Structure and Electrical Properties of the Palmierite Sr3P2O8

    Almakara, J. S., Tawse, D., Mclaughlin, A.
    Journal of Solid State Chemistry, vol. 359, 125962
    Contributions to Journals: Articles
  • Elucidating oxide-ion and proton transport in ionic conductors using machine learning potentials

    Zhou, Y., Fop, S., Mclaughlin, A. C., Dawson, J. A.
    npj Computational Materials, vol. 11, no. 1, 328
    Contributions to Journals: Articles
  • Enhancement of oxide ion and proton conductivity in Sr3-xCaxV2O8 palmierites through tuning of the crystal structure

    Martin, S. G., Ballantyne, O. J., Ritter, C., Zhou, Y., Forrester, F. N., Dawson, J. A., Mclaughlin, A. C.
    Solid State Ionics, vol. 432, 117041
    Contributions to Journals: Articles
  • Enhanced Oxide Ion Diffusion by Lanthanum Substitution in the Palmierite Sr3-3xLa2xV2O8 via Increased Tetrahedral Distortion and Cation Vacancies

    Watson, V. L., Zhou, Y., Smith, R., Fop, S., Sun, Y., Shao, Z., Jiang, S. P., Ballantyne, O. J. B., Dawson, J. A., McLaughlin, A.
    Chemistry of Materials, vol. 37, no. 19, pp. 7987-7995
    Contributions to Journals: Articles
  • Unlocking the potential of palmierite oxides: high oxide ion conductivity via induced interstitial defects

    Tawse, D., Fop, S., Still, J. W., Ballantyne, O. J. B., Ritter, C., Zhou, Y., Dawson, J. A., McLaughlin, A.
    Journal of the American Chemical Society, vol. 147, no. 11, pp. 9694-9703
    Contributions to Journals: Articles
  • Tuning of the Ionic Conductivity of Ba7Nb4MoO20 by Pressure: A Neutron Diffraction and Atomistic Modelling Study

    Watson, V., Zhou, Y., Tawse, D., Ballantyne, O. J., Ridley, C. J., Dawson, J. A., McLaughlin, A.
    Journal of Materials Chemistry A, vol. 13, no. 6, pp. 4444-4451
    Contributions to Journals: Articles
  • Development of Nanostructured Lanthanum Strontium Cobalt Ferrite/Gadolinian-Doped Ceria Composite Electrodes of Solid Oxide Cells Formed by In Situ Polarization

    Sun, Y., He, S., Li, Z., McLaughlin, A., Chen, K., Shao, Z., Jiang, S. P.
    ACS Applied Materials & Interfaces, vol. 16, no. 17, pp. 21818–21827
    Contributions to Journals: Articles
  • A Variable Temperature Neutron Diffraction Study of Dual Ion Conducting Sr3V2O8

    Tawse, D., Fop, S., Ritter, C., Martinez-Felipe, A., McLaughlin, A.
    Journal of Solid State Chemistry, vol. 331, 124512
    Contributions to Journals: Articles
  • Observation of an Exotic Insulator to Insulator Transition upon Electron Doping the Mott Insulator CeMnAsO

    Wildman, E., Lawrence, G., Walsh, A., Morita, K., Simpson, S., Ritter, C., Stenning, G. B. G., Arevalo-Lopez, A. M., McLaughlin, A.
    Nature Communications, vol. 14, 1737
    Contributions to Journals: Articles
  • Enhanced Oxide Ion Conductivity by Ta Doping of Ba3Nb1-xTaxMoO8.5

    McLaughlin, A., Sherwood, B., Wildman, E., Smith, R.
    Inorganic Chemistry, vol. 62, no. 4, pp. 1628-1635
    Contributions to Journals: Articles
  • Proton and Oxide Ion Conductivity in Palmierite Oxides

    Fop, S., Dawson, J. A., Tawse, D., Skellern, M. G., Skakle, J., McLaughlin, A.
    Chemistry of Materials, vol. 34, no. 18, pp. 8190-8197
    Contributions to Journals: Articles
  • Magnetic Phase Separation in the Oxypnictide Sr2Cr1.85ÌýMn1.15As2O2

    Arah, B., Ritter, C., Stenning, G. B. G., Mclaughlin, A. C.
    Inorganic Chemistry, vol. 61, no. 32, pp. 12518-12525
    Contributions to Journals: Articles
  • Localized Spin Dimers and Structural Distortions in the Hexagonal Perovskite Ba3CaMo2O9

    Simpson, S., Milton, M., Fop, S., Stenning, G. B. G., Hopper, H. A., Ritter, C., Mclaughlin, A. C.
    Inorganic Chemistry, vol. 61, no. 30, pp. 11622-11628
    Contributions to Journals: Articles
  • Electronic Phase Separation in the Hexagonal Perovskite Ba3SrMo2O9

    Simpson, S., Fop, S., Hopper, H., Stenning, G. B. G., Ritter, C., McLaughlin, A.
    Physical Review Materials, vol. 6, no. 2, 024401
    Contributions to Journals: Articles
  • Variable Temperature Neutron Diffraction Study of the Oxide Ion Conductor Ba3VWO8.5

    Gilane, A., Fop, S., Tawse, D., Ritter, C., McLaughlin, A.
    Inorganic Chemistry, vol. 61, no. 3, pp. 1597-1602
    Contributions to Journals: Articles
  • An Investigation of the Crystal Structure and Ionic Pathways of the Hexagonal Perovskite Derivative Ba3-xVMoO8.5

    Tawse, D., Gilane, A., Fop, S., Martinez-Felipe, A., Sher, F., Smith, R. I., McLaughlin, A.
    Inorganic Chemistry, vol. 60, pp. 13550-13556
    Contributions to Journals: Articles
  • Hydration and Ionic Conduction Mechanisms of Hexagonal Perovskite Derivatives

    Fop, S., Dawson, J. A., Dominic Fortes, A., Ritter, C., McLaughlin, A.
    Chemistry of Materials, vol. 33, no. 12, pp. 4651–4660
    Contributions to Journals: Articles
  • A pressure induced reversal to the 9R perovskite in Ba3MoNbO8.5

    Sherwood, B., RIDLEY, C. J., Bull, C. L., Fop, S., Skakle, J., McLaughlin, A., Wildman, E.
    Journal of Materials Chemistry A, vol. 9, no. 10, pp. 6567-6574
    Contributions to Journals: Articles
  • The relationship between oxide-ion conductivity and cation vacancy order in the hybrid hexagonal perovskite Ba3VWO8.5

    Gilane, A., Fop, S., Sher, F., Smith, R. I., McLaughlin, A. C.
    Journal of Materials Chemistry A, vol. 8, no. 32, pp. 16506-16514
    Contributions to Journals: Articles
  • High oxide ion and proton conductivity in a disordered hexagonal perovskite

    Fop, S., McCombie, K. S., Wildman, E. J., Skakle, J. M. S., Irvine, J. T. S., Connor, P. A., Savaniu, C., Ritter, C., Mclaughlin, A. C.
    Nature materials, vol. 19, pp. 752-757
    Contributions to Journals: Articles
  • Enhanced Oxygen Ion Conductivity and Mechanistic Understanding in Ba3Nb1-xVxMoO8.5

    Fop, S., Mccombie, K., Smith, R. I., McLaughlin, A. C.
    Chemistry of Materials, vol. 32, no. 11, pp. 4724-4733
    Contributions to Journals: Articles
  • The Electronic and Magnetic Properties of Cation Ordered Sr2Mn2.23Cr0.77As2O2

    Lawrence, G. B., Wildman, E. J., Stenning, G. B. G., Ritter, C., Fauth, F., McLaughlin, A. C.
    Inorganic Chemistry, vol. 59, no. 11, pp. 7553-7560
    Contributions to Journals: Articles
  • Hexagonal perovskite related oxide ion conductor Ba3NbMoO8.5: phase transition, temperature evolution of the local structure and properties

    Chambers, M. S., McCombie, K. S., Auckett, J. E., McLaughlin, A. C., Irvine, J. T., Chater, P. A., Evans, J. S., Evans, I. R.
    Journal of Materials Chemistry A, vol. 7, no. 44, pp. 25503-25510
    Contributions to Journals: Articles
  • Hexagonal perovskite derivatives: a new direction in the design of oxide ion conducting materials

    Fop, S., McCombie, K. S., Wildman, E. J., Skakle, J. M. S., Mclaughlin, A. C.
    Chemical Communications, vol. 55, no. 15, pp. 2127-2137
    Contributions to Journals: Articles
  • The suppression of CMR in Nd(Mn1−xCox)AsO0.95F0.05

    Wildman, E. J., McCombie, K. S., Stenning, G. B. G., McLaughlin, A. C.
    Dalton Transactions, vol. 47, no. 41, pp. 14726-14733
    Contributions to Journals: Articles
  • The Relationship between the Crystal Structure and Electrical Properties of Oxide Ion Conducting Ba3W1.2Nb0.8O8.6

    McCombie, K. S., Wildman, E. J., Ritter, C., Smith, R. I., Skakle, J. M. S., Mclaughlin, A. C.
    Inorganic Chemistry, vol. 57, no. 19, pp. 11942-11947
    Contributions to Journals: Articles
  • The crystal structure and electrical properties of the oxide ion conductor Ba3WNbO8.5

    McCombie, K. S., Wildman, E. J., Fop, S., Smith, R. I., Skakle, J. M. S., Mclaughlin, A. C.
    Journal of Materials Chemistry A, vol. 6, no. 13, pp. 5290-5295
    Contributions to Journals: Articles
  • Improving the selectivity of photocatalytic NOx abatement through improved O2 reduction pathways using Ti0.909W0.091O2Nx semiconductor nanoparticles: from characterisation to photocatalytic performance

    Folli, A., Bloh, J. Z., Armstrong, K., Richards, E., Murphy, D. M., Lu, L., Kiely, C. J., Morgan, D. J., Smith, R. I., McLaughlin, A. C., MacPhee, D. E.
    ACS Catalysis, vol. 8, pp. 6927-6938
    Contributions to Journals: Articles
  • Neutron scattering study of strain behaviour of porous rocks subjected to heating and unconfined uniaxial compression

    Faisal, N. H., Sanaee, R., Singh, R. M., Murray, J., McLaughlin, A., Healy, D., Lee, T. L.
    Contributions to Journals: Conference Articles
  • Physicochemical Tools: Toward a Detailed Understanding of the Architecture of Targeted Radiotherapy Nanoparticles

    Cabello, G., Nwoko, K. C., Mingarelli, M., McLaughlin, A. C., Trembleau, L., Feldmann, J., Cuesta Ciscar, A., Smith, T. A. D.
    ACS Applied Bio Materials, vol. 1, no. 5, pp. 1639-1646
    Contributions to Journals: Articles
  • An investigation of the electronic, structural and magnetic properties of the ruddlesden-popper phase Sr3RuCoO7

    Hopper, H. A., Wildman, E. J., Macphee, D. E., Sher, F., Ritter, C., Lledos, M., Stenning, G., McLaughlin, A. C.
    Journal of Solid State Chemistry, vol. 253, pp. 313-317
    Contributions to Journals: Articles
  • Investigation of the Relationship between the Structure and Conductivity of the Novel Oxide Ionic Conductor Ba3MoNbO8.5

    Fop, S., Wildman, E. J., Irvine, J. T. S., Connor, P. A., Skakle, J. M. S., Ritter, C., McLaughlin, A. C.
    Chemistry of Materials, vol. 29, no. 9, pp. 4146-4152
    Contributions to Journals: Articles
  • The Crystal Structure of Ba3Nb2O8 Revisited: A Neutron Diffraction and Solid-State NMR Study

    Wildman, E. J., McLaughlin, A. C., MacDonald, J. F., Hanna, J. V., Skakle, J. M. S.
    Inorganic Chemistry, vol. 56, no. 5, pp. 2653-2661
    Contributions to Journals: Articles
  • The Electrical and Structural Characterization of Ba3Mo1-xNb1+xO8.5-x/2: The relationship between mixed coordination, polyhedral distortion and the ionic conductivity of Ba3MoNbO8.5

    Fop, S., Wildman, E. J., Skakle, J. M. S., Ritter, C., McLaughlin, A. C.
    Inorganic Chemistry, vol. 56, no. 17, pp. 10505-10512
    Contributions to Journals: Articles
  • Oxide Ion Conductivity in the Hexagonal Perovskite Derivative Ba3MoNbO8.5

    Fop, S., Skakle, J. M. S., McLaughlin, A. C., Connor, P. A., Irvine, J. T. S., Smith, R. I., Wildman, E. J.
    Journal of the American Chemical Society, vol. 138, no. 51, pp. 16764-16769
    Contributions to Journals: Articles
  • The Structure and Optical Properties of Sr1-xCaxMoO3

    Hopper, H. A., MacPhee, D. E., McLaughlin, A. C.
    Journal of Solid State Chemistry, vol. 242, no. 1, pp. 248-252
    Contributions to Journals: Articles
  • A Variable Temperature Synchrotron X-ray Diffraction Study of Colossal Magnetoresistant NdMnAsO0.95F0.05

    Wildman, E. J., McLaughlin, A. C.
    Scientific Reports, vol. 6, pp. 1-7
    Contributions to Journals: Articles
  • An investigation of the optical properties and water splitting potential of the coloured metallic perovskites Sr1-xBaxMoO3

    Hopper, H. A., Le, J., Cheng, J., Weller, T., Marschall, R., Bloh, J. Z., Macphee, D. E., Folli, A., McLaughlin, A. C.
    Journal of Solid State Chemistry, vol. 234, pp. 87-92
    Contributions to Journals: Articles
  • A high pressure neutron study of colossal magnetoresistant NdMnAsO0.95F0.05

    Wildman, E. J., Tucker, M. G., McLaughlin, A. C.
    Journal of Physics: Condensed Matter, vol. 27, no. 11, 116001
    Contributions to Journals: Articles
  • Absence of Colossal Magnetoresistance in the Oxypnictide PrMnAsO0.95F0.05

    Wildman, E. J., Sher, F., McLaughlin, A.
    Inorganic Chemistry, vol. 54, no. 6, pp. 2536-2542
    Contributions to Journals: Articles
  • Emergent transition for superconducting fluctuations in antiferromagnetic ruthenocuprates

    McLaughlin, A., Attfield, J.
    Physical Review B Condensed Matter and Materials Physics , vol. 90, no. 22, 220509(R)
    Contributions to Journals: Letters
  • Electronic and magnetic properties of Nd1-xSrxMnAsO oxyarsenides

    McLaughlin, A., Wildman, E. J., Emery, N.
    Physical Review B Condensed Matter and Materials Physics , vol. 90, no. 22, 224413
    Contributions to Journals: Articles
  • Structural and magnetic characterisation of the novel spin frustrated double perovskite Sr2ScMoO6

    Wallace, T. K., McLaughlin, A. C.
    Journal of Solid State Chemistry, vol. 219, pp. 148-151
    Contributions to Journals: Articles
  • Spin dynamics in IrSr2Sm1.15Ce0.85Cu2O10: Complex magnetic behavior in a layered iridocuprate

    Colman, R. H., Manuel, P., Khalyavin, D. D., Hillier, A. D., Mclaughlin, A. C.
    Physical Review B Condensed Matter and Materials Physics , vol. 88, no. 18, 184408
    Contributions to Journals: Articles
  • A variable temperature synchrotron X-ray diffraction study of the ferroelastic double perovskite Ba2GdMoO6

    Wallace, T. K., Colman, R. H., McLaughlin, A. C.
    Physical Chemistry Chemical Physics, vol. 15, no. 22, pp. 8672-8677
    Contributions to Journals: Articles
  • A high temperature neutron diffraction study of the double perovskite Ba 2 154SmMoO 6

    Wallace, T. K., Ritter, C., McLaughlin, A. C.
    Journal of Solid State Chemistry, vol. 196, pp. 379-383
    Contributions to Journals: Articles
  • Colossal magnetoresistance in Mn2+ oxypnictides NdMnAsO1-xFx

    Wildman, E. J., Skakle, J. M. S., Emery, N., Mclaughlin, A. C.
    Journal of the American Chemical Society, vol. 134, no. 21, pp. 8766-8769
    Contributions to Journals: Articles
  • IrSr2Sm1.15Ce0.85Cu2.175O10: A reentrant spin-glass material

    Colman, R. H., McLaughlin, A.
    Physical Review B Condensed Matter and Materials Physics , vol. 85, no. 14, 144419
    Contributions to Journals: Articles
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